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A Study on An Integrated GEO/TES with Geothermal Heat Exchanger and Thermal Ice Storage  

Lohrenz ED. (CGD, Ice Kube System Ltd.)
Hahn Jeongsang (CGD, CGWP, P.E/CNE)
Han Hyuk Sang (CGD/CNE)
Hahn Chan (Yoosin Corp., Ltd.)
Kim Hyoung Soo (Korea Water resources Corporation)
Publication Information
Economic and Environmental Geology / v.38, no.6, 2005 , pp. 717-729 More about this Journal
Abstract
Peak cooling load of large buildings is generally greater than their peak heating load. Internal and solar heat gains are used fur selection of adquate equipment in large building in cold winter climate like Canada and even Korea. The cost of geothermal heat exchanger to meet the cooling loads can increase the initial cost of ground source heat pump system to the extend less costly conventional system often chosen. Thermal ice storage system has been used for many years in Korea to reduce chiller capacity and shift Peak electrical time and demand. A distribution system designed to take advantage of heat extracted from the ice, and use of geothermal loop (geothermal heat exchanger) to heat as an alternate heat source and sink is well known to provide many benifits. The use of thermal energy storage (TES) reduces the heat pump capacity and peak cooling load needed in large building by as much as 40 to $60\%$ with less mechanical equipment and less space for mechanical room. Additionally TES can reduce the size and cost of the geothermal loop by 1/3 to 1/4 compared to ground coupled heat pump system that is designed to meet the peak heating and cooling load and also can eliminate difficuties of geothermal loop installation such as space requirements and thermal conditions of soil and rock at the urban area.
Keywords
Geothermal heat exchanger; Thermal ice storage; Ground source heat pump system; TES; HVAC (Heating, ventilation and air conditioning);
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